Roy Debashish, Steyer Grant J, Gargesha Madhusudhana, Stone Meredith E, Wilson David L
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.
Anat Rec (Hoboken). 2009 Mar;292(3):342-51. doi: 10.1002/ar.20849.
We developed the Case Cryo-imaging system that provides information rich, very high-resolution, color brightfield, and molecular fluorescence images of a whole mouse using a section-and-image block-face imaging technology. The system consists of a mouse-sized, motorized cryo-microtome with special features for imaging, a modified, brightfield/fluorescence microscope, and a robotic xyz imaging system positioner, all of which is fully automated by a control system. Using the robotic system, we acquired microscopic tiled images at a pixel size of 15.6 microm over the block face of a whole mouse sectioned at 40 microm, with a total data volume of 55 GB. Viewing 2D images at multiple resolutions, we identified small structures such as cardiac vessels, muscle layers, villi of the small intestine, the optic nerve, and layers of the eye. Cryo-imaging was also suitable for imaging embryo mutants in 3D. A mouse, in which enhanced green fluorescent protein was expressed under gamma actin promoter in smooth muscle cells, gave clear 3D views of smooth muscle in the urogenital and gastrointestinal tracts. With cryo-imaging, we could obtain 3D vasculature down to 10 microm, over very large regions of mouse brain. Software is fully automated with fully programmable imaging/sectioning protocols, email notifications, and automatic volume visualization. With a unique combination of field-of-view, depth of field, contrast, and resolution, the Case Cryo-imaging system fills the gap between whole animal in vivo imaging and histology.
我们开发了案例冷冻成像系统,该系统采用切片和图像块面成像技术,可提供信息丰富、高分辨率、彩色明场以及分子荧光的全小鼠图像。该系统由一台具有成像特殊功能的小鼠尺寸的电动冷冻切片机、一台改进的明场/荧光显微镜以及一个机器人xyz成像系统定位器组成,所有这些都由一个控制系统完全自动化操作。使用该机器人系统,我们在以40微米切片的全小鼠块面上以15.6微米的像素尺寸获取了微观平铺图像,总数据量为55GB。通过以多种分辨率查看二维图像,我们识别出了诸如心脏血管、肌肉层、小肠绒毛、视神经和眼球各层等小结构。冷冻成像也适用于对胚胎突变体进行三维成像。一只在平滑肌细胞中γ肌动蛋白启动子下表达增强型绿色荧光蛋白的小鼠,清晰地呈现了泌尿生殖道和胃肠道平滑肌的三维视图。通过冷冻成像,我们能够在小鼠大脑的非常大的区域获得低至10微米的三维脉管系统。软件通过完全可编程的成像/切片协议、电子邮件通知和自动体积可视化实现了完全自动化。案例冷冻成像系统凭借独特的视野、景深、对比度和分辨率组合,填补了全动物体内成像与组织学之间的空白。